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Influence of the Age of Bamboo Culm and Its Vertical Position on the Technological Properties of Bamboo Fibers: A Case of Bambusa vulgaris Species from Cameroonian Culture
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作者 Joseph Loic Souck Theodore Tchotang Bienvenu Kenmeugne 《Open Journal of Composite Materials》 CAS 2022年第3期98-110,共13页
Due to their interesting properties, bamboo fibers are more and more used as reinforcements in polymer matrices as a substitute for synthetic fibers. For their future service life, it is important to understand their ... Due to their interesting properties, bamboo fibers are more and more used as reinforcements in polymer matrices as a substitute for synthetic fibers. For their future service life, it is important to understand their physical and mechanical behavior over time in order to control the aging phenomenon within this fiber. The paper analyzed the influence of the age of the bamboo thatch and the vertical position of the Bambusa vulgaris species cultivated in Cameroon on the physicomechanical properties of the fibers extracted from the thatch. Fibers were mechanically extracted from three bamboo culms aged respectively 3 years (BV3), 4 years (BV4) and 5 years (BV5). The culms were thus identified according to their number of ramifications, and were felled no abated for a total of three culms. A section of about one meter on each of the parts (lower part, middle part, upper part) of these three culms was made for the opposite technological studies. Each age was therefore represented by three portions of thatch, one from the upper part, one from the middle part and the last from the lower part of the thatch, all giving a total number of nine samples taken and marked BV3inf, BV3moy, BV3sup, BV4inf, BV4moy, BV4sup, BV5inf, BV5moy, BV5sup before handling in the laboratory. Physical (density, moisture absorption rate) and mechanical (tensile tests according to DIN EN ISO 13934-1, natural durability) characterizations were used to better understand the mechanisms of this influence. In view of all the results obtained, the fiber from the upper part of the 3-year-old thatch (BV3sup) is the one with the best characteristics and is recommended for a better elaboration of bamboo fiber composites: (Density: 0.83;Absorption rate 11.7%;Young’s modulus: 7.4 GPa;Maximal stress: 64.3 MPa;Elongation at rupture: 1.1;Loss of mass natural durability: 7.63%). 展开更多
关键词 Fiber Bamboo culm characterization ELABORATION Extraction
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冷等离子体和2D树脂基防护剂对毛竹材的防护效果 被引量:1
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作者 李斌 张健 +1 位作者 周晓剑 杜官本 《林业工程学报》 CSCD 北大核心 2021年第2期57-63,共7页
采用滑动弧冷等离子体对竹条和圆竹筒进行处理,并将处理后的样品进行复合型防护药剂加压浸渍处理。采用质量增加率、平衡含水率、湿胀率以及竹条和竹筒的抗压强度等指标来考察防护药剂处理后对竹材性能的影响,并观察竹条和圆竹筒防护处... 采用滑动弧冷等离子体对竹条和圆竹筒进行处理,并将处理后的样品进行复合型防护药剂加压浸渍处理。采用质量增加率、平衡含水率、湿胀率以及竹条和竹筒的抗压强度等指标来考察防护药剂处理后对竹材性能的影响,并观察竹条和圆竹筒防护处理后的发霉情况。实验结果表明,竹条和圆竹筒表面在加压条件下对二羟甲基二羟乙基乙烯脲(2D树脂)+戊唑醇与丙环唑(PT)+碘代丙炔基氨基甲酸丁酯(IPBC)复合型树脂防护剂的渗透性和附着性得以提升,表现为竹条和圆竹筒经滑动弧冷等离子体和防护药剂加压浸渍处理后质量增加率提高,而平衡含水率和湿胀率下降。对竹条和圆竹筒的质量增加率、平衡含水率、湿胀率和抗压强度产生积极影响的顺序为:冷等离子体处理+加压浸渍防护药剂>加压浸渍防护药剂>未经任何处理的竹条和圆竹筒。此外,竹节的多少也对竹材的质量增加率、平衡含水率和湿胀率产生影响,影响顺序为:无节>单节>双节。处理后,竹条和圆竹筒具有优异的防霉特性,存放半年后,圆竹筒仍能保持原来的物理特征,竹条和圆竹筒表面和端部均无发霉、腐朽和开裂现象。 展开更多
关键词 冷等离子体 防护药剂 圆竹 竹条 处理工艺 性能表征
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砂质脱潮土区不同冬小麦品种(系)抗倒伏特性研究 被引量:2
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作者 黄玲 杨文平 +5 位作者 梅沛沛 焦爽 徐丽娜 张志勇 欧行奇 姚素梅 《灌溉排水学报》 CSCD 北大核心 2021年第3期31-39,共9页
【目的】研究河南省砂质脱潮土区冬小麦的抗倒伏性能。【方法】以河南省砂质脱潮土区种植的13个不同冬小麦品种(系)为研究对象,分析灌浆中期冬小麦农艺性状、茎秆物质特性和力学特性与抗倒性能的关系,并对与小麦抗倒指数相关的9个性状... 【目的】研究河南省砂质脱潮土区冬小麦的抗倒伏性能。【方法】以河南省砂质脱潮土区种植的13个不同冬小麦品种(系)为研究对象,分析灌浆中期冬小麦农艺性状、茎秆物质特性和力学特性与抗倒性能的关系,并对与小麦抗倒指数相关的9个性状进行相关、聚类和主成分分析。【结果】灌浆中期的株高和重心高度不是冬小麦品种(系)倒伏的决定因素。不同冬小麦品种(系)的基部第二节间的机械强度和抗倒指数与第二节间长度在一定范围内负相关,但相关性不显著;与株高构成指数和基二/株高极显著和显著负相关;与茎粗、茎壁厚度和厚径比显著和极显著正相关。聚类分析中类群Ⅰ通过降低株高和优化基部第二节间来改善抗倒性能。类群Ⅱ通过基部第二节间特性优化来改善抗倒性能,类群Ⅲ通过降低株高和提高茎秆机械强度来降低倒伏。主成分分析得到的3个主成分因子对抗倒性状变异累计贡献率为83.72%。主成分因子Y1反映茎秆指标变异的48.11%,其中茎壁厚度、厚径比、机械强度是决定Y1的主要因素。【结论】抗倒指数是由多因素决定的综合性状,基二/株高、茎壁厚度、茎粗和厚径比可以作为评价抗倒伏指数的指标选项。就砂质脱潮土区提高小麦抗倒育种对策而言,除茎秆的机械强度外,注重基部第二节间长度占株高的比例和茎壁厚度与茎粗的比例同样重要。 展开更多
关键词 冬小麦品种(系) 砂质土 茎秆特性 机械强度 抗倒指数
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